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Your position Biomolecular dynamics, such as conformational changes, are the understudied link between biomolecular structure and function. Single-molecule FRET is an established technique, unique
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would be beneficial. A proactive, independent, and structured working style, combined with the ability to work effectively in interdisciplinary teams. Curiosity and strong motivation to acquire new skills
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young researchers from around the world? Do you bring a precise, well-structured, and forward-thinking approach to your work, while enjoying the challenge of learning and mastering new tasks? Are you
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samples. Job description This project aims to develop novel methods for studying chirality across different length scales and spectral ranges to extract key structural information that goes beyond
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the project funded by the Swiss National Foundation , we would like to unveil the mechanism of FLA for sintering wide-band gap ceramics, with a particular focus on Li-containing oxides that can be used as
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blade aerodynamics, gust interactions, and fluid-structure interactions. The research focuses on unfolding the origin and development of unsteady flow separation and vortex formation. The lab has built a
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, for advancing our fluorescence-based DyeCycling/FRET technology to study biomolecular dynamics. Biomolecular dynamics, such as conformational changes, are the understudied link between biomolecular structure and
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well as the disassembly or reassembly of the materials into new composite structures. We envision that the generated knowledge will advance the field of bio-based and sustainable material technologies and contribute to new
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of nanoparticles for healthcare and industrial applications. As a PhD candidate, you will: Develop and refine SAXS and FCCS methods to quantify size, concentration, density and internal structure of diverse